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Non-linear Mechanics of Three-dimensional Architected Materials; Design of Soft and Functional Systems and Structures

机译:三维结构材料的非线性力学;软功能系统和结构的设计

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摘要

In the search for materials with new properties, there have been significant advances in recent years aimed at the construction of architected materials whose behavior is governed by structure, rather than composition. Through careful design of the material's architecture, new mechanical properties have been demonstrated, including negative Poisson's ratio, high stiffness to weight ratio and mechanical cloaking. However, most of the proposed architected materials (also known as mechanical metamaterials) have a unique structure that cannot be recon figured after fabrication, making them suitable only for a specific task.;This thesis focuses on the design of architected materials that take advantage of the applied large deformation to enhance their functionality. Mechanical instabilities, which have been traditionally viewed as a failure mode with research focusing on how to avoid them, are exploited to achieve novel and tunable functionalities. In particular I demonstrate the design of mechanical metamaterials with tunable negative Poisson ratio, adaptive phononic band gaps, acoustic switches, and reconfigurable origami-inspired waveguides.;Remarkably, due to large deformation capability and full reversibility of soft materials, the responses of the proposed designs are reversible, repeatable, and scale independent. The results presented here pave the way for the design of a new class of soft, active, adaptive, programmable and tunable structures and systems with unprecedented performance and improved functionalities.
机译:在寻找具有新特性的材料方面,近年来针对建筑材料的构造已经取得了重大进展,这些建筑材料的行为由结构而不是组成决定。通过仔细设计材料的结构,已证明了新的机械性能,包括负泊松比,高刚度重量比和机械隐蔽性。但是,大多数提议的架构材料(也称为机械超材料)具有独特的结构,无法在制造后进行重构,使其仅适用于特定任务。;本论文着眼于利用以下优点的架构材料的设计:施加较大的变形以增强其功能。机械不稳定性传统上被视为一种故障模式,其研究重点是如何避免机械不稳定性,这些机械不稳定性被用来实现新颖且可调节的功能。我特别展示了具有可调负泊松比,自适应声子带隙,声开关和可重构折纸启发的波导的机械超材料的设计;值得注意的是,由于软材料的大变形能力和完全可逆性,建议的响应设计是可逆的,可重复的和独立于规模的。本文介绍的结果为设计新型软,有源,自适应,可编程和可调结构和系统提供了空前的性能和改进的功能。

著录项

  • 作者

    Babaee, Sahab.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Mechanical engineering.;Materials science.;Mechanics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:49

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